• Title/Summary/Keyword: 최적 재고수준

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A Study on the Optimal Service Level of Exclusive Container Terminals (컨테이너 전용부두의 최적 서비스 수준에 관한 연구)

  • Park, Sang-Kook
    • Journal of Korea Port Economic Association
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    • v.32 no.2
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    • pp.137-156
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    • 2016
  • This study analyzes the optimal service levels of exclusive container terminals in terms of the optimal berth occupancy rate and the ships' waiting ratios, based on the number of berths. We develop a simulation model using berth throughput data from pier P, Busan New Port, a representative port in Korea, and apply the simulation results to different numbers of berths. In addition to the above results, we analyze the financial data and costs of delayed ships and delayed cargoes for the past three years from the viewpoints of the terminal operation company (TOC), shipping companies, and shippers to identify the optimal service level for berth occupancy rates that generate the highest net profit. The results show that the optimal levels in the container terminal are a 63.4% berth occupancy rate and 10.6% ship waiting ratio in berth 4,66.0% and 9.6% in berth 5, and 69.0% and 8.5% in berth 6. However, the results of the 2013 study by the Ministry of Maritime Affairs and Fisheries showed significantly different optimal service levels: a 57.1% berth occupancy rate and 7.4% ship waiting ratio in berth 4; 63.4% and 6.6% in berth 5; and 66.6% and 5.6% in berth 6. This suggests that optimal service level could change depending on when the analysis is performed. In other words, factors affecting the optimal service levels include exchange rates, revenue, cost per TEU, inventory cost per TEU, and the oil price. Thus, optimal service levels can never be fixed. Therefore, the optimal service levels for container terminals need to be able to change relatively quickly, depending on factors such as fluctuations in the economy, the oil price, and exchange rates.

An Algorithm for Optimal Inventory Level in Multi - Echelon Repairable - Item Inventory System with General Service Time distribution (일반 서비스 시간 분포를 갖는 다단계 수리가능 재고 시스템에 대한 최적재고수준 알고리듬)

  • Kim, Tai-Young;Kim, Jong-Soo;Hur, Sun
    • Journal of Korean Institute of Industrial Engineers
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    • v.27 no.3
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    • pp.226-232
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    • 2001
  • This paper presents an efficient method for the problem of determining the spare inventory level of a multi-echelon repairable-item inventory system. We consider the system with two levels of inventory, two levels of service and with a general service time distribution. We propose an algorithm that determines the spare inventory level to satisfy the minimum fill rate with the minimum cost. Experimental results show that the algorithm is accurate and efficient.

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Determining the Optimal Spare Parts Level Considering Equipment Availability (장비 가용도를 고려한 최적 수리부품 재고수준 결정)

  • 우제웅;강맹규
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.21 no.47
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    • pp.87-99
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    • 1998
  • This study is concerned with a problem of determining the optimal requirements level of the spare parts, especially Concurrent Spare Parts(CSP). CSP is supplied with the procurement of new equipment system, and is used to sustain the equipment without resupply during the initial coverage period. We consider this situation as a multiechelon inventory model with several bases and one depot. And we assume a equipment system which consists of many types of parts would grounded if one of the parts fail. Also this multiechelon CSP problem is considering a time-varing (dynamic) environment. We develop a computational procedure to find the optimal number of spare parts minimizing the total expected cost, while achieving the required system availability. Finally we present a simple example of suggested method.

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The Optimal Inventory Level of the Maintenance Float to Achieve a Target Operational Availability of Korean-Made Helicopter (한국형 헬기의 목표 운용가용도 달성을 위한 정비대충장비 최적 재고수준 결정)

  • Lee, Sang-Jin;Kim, Seong-Won
    • Korean Management Science Review
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    • v.24 no.2
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    • pp.81-93
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    • 2007
  • Achieving a target operational availability is more economical and efficient than having many quantities of the weapon system, since the cost of weapon system becomes expensive. The intent of this study is twofold; first, we develop the simulation model to determine the optimal inventory level of the maintenance float while achieving a target operational availability of the Korean-made helicopter. The quantity decision model considers following factors such as a reliability. a turn around time(TAT). a protection level for inventory, and so on. Second, we analyze whether the existence of a lateral transshipment among bases and the reduction of TAT relate to an inventory level and the operational availability. The research result shows that both TAT and lateral transshipment have an effect on reducing the inventory level of the maintenance float and improving an operational availability.

물류네트워크 구축을 위한 현실적 접근 방향에 대한 연구

  • 구자용;송성헌
    • Proceedings of the Korean Operations and Management Science Society Conference
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    • 1995.09a
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    • pp.119-124
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    • 1995
  • 물류네트워크에서 다루는 문제들은 물류거점의 입지문제, 물류거점의 재고문 제, 수배송문제로 크게 분류해 볼수 있으며 특히 이들 각 문제들은 복합적으 로 관련되어 있는 것이 사실이다. 이러한 물류네트워크모형을 수리적으로 표 현해보면 대규모 혼합 정수계획법이 되어 최적 해를 구하기가 매우 어려울 뿐더러 현실적으로 유리된 가정이 불가피하다. 수리모형의 비현실적인 가정 들을 가능한 줄이고 현실적으로 응용 가능한 방법론을 제시하는 것이 본 연 구의 목적이다. 때문에 단일 최적 해를 찾는 수리계획법 대신 대안별로 분 석.비교평가 할 수 있는 네트워크 시뮬레이션 기법을 이용하였다. 평가척도 는 비용인자와 서비스 수준을 이용하지만 시뮬레이션 기법의 유연성으로 인 해 다양한 평가인자를 접목시킬수 있는 가능성을 제공하였다. 현실성과 실용 성에 주안을 둔 본 연구는 프로그래밍 되어 분석 및 계획수립과정에 활용되 어질수 있다.

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Optimizing Design Problem in an Automotive Body Assembly Line Considering Cost Factors (비용요소를 고려한 자동차 차체조립라인의 설계 최적화)

  • Lee, Young Hoon;Kim, Dong Ok;Baek, Gyeong Min;Shin, Yang Woo;Moon, Dug Hee
    • Journal of the Korea Society for Simulation
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    • v.29 no.4
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    • pp.95-109
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    • 2020
  • In this paper, an optimal manufacturing system design problem in an automotive body assembly lines is introduced when various costs such as equipment investment costs are considered. Meta-model methodology based on simulation results has been used for estimating the performances of the system such as production rate and work-in-process levels. The objective function is minimizing total cost which satisfies the target production rate. The investment costs such as robots, buffers, transportation equipment, and the inventory holding cost of work-in-process have been included in the objective function. Harmony search method has been used for optimization.

An Efficient Mixed-Integer Programming Model for Berth Allocation in Bulk Port (벌크항만의 하역 최적화를 위한 정수계획모형)

  • Tae-Sun, Yu;Yushin, Lee;Hyeongon, Park;Do-Hee, Kim;Hye-Rim, Bae
    • Journal of Korea Society of Industrial Information Systems
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    • v.27 no.6
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    • pp.105-114
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    • 2022
  • We examine berth allocation problems in tidal bulk ports with an objective of minimizing the demurrage and dispatch associated berthing cost. In the proposed optimization model inventory (or stock) level constraints are considered so as to satisfy the service level requirements in bulk terminals. It is shown that the mathematical programming formulation of this research provides improved schedule resolution and solution accuracy. We also show that the conventional big-M method of standard resource allocation models can be exempted in tidal bulk ports, and thus the computational efficiency can be significantly improved.

Algorithm to Determine the Optimal Spare Inventory Level for Repairable-Item Inventory System (수리가능제품의 최적재고수준의 결정기법)

  • Kim, Jong-Soo;Shin, Kyu-Chul
    • Journal of Korean Institute of Industrial Engineers
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    • v.19 no.3
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    • pp.81-90
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    • 1993
  • This article concerns the problem of determining the optimal spare inventory level for multiechelon repairable-item inventory system. The system we are concerned has several bases and a central depot. When an item fails, it is dispatched to a repair facility and, a spare, if available, is plugged in immediately. When the failed item is repaired, it is sent to the base and either used to fill a backorder or stored at a spare inventory point. We develop an optimal algorithm to find the spare inventory level at each base spareswhich minimizes the total expected cost and, simultaneously, satisfies a specified minimum service rate. The algorithm is applied to examples with good results.

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The Safety Stock Determination by the Optimal Service Level and the Forecasting Error Correcting (최적서비스수준과 예측오차수정에 의한 안전재고 결정)

  • 안동규;이상용
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.19 no.37
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    • pp.31-40
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    • 1996
  • The amount of safety stock is decided from various information such as the forecasted demand, the lead time, the size of the order quantity and the desired service level. There are two cases to consider the problem of setting safety stock when both the demand in a period and the lead time are characterized as random variables: the first case is the parameters of the demand and lead time distributions are known, the second case is they are unknown and must be estimated. The objective of this study is to present the procedure for setting safety stocks in the case the parameters of the demand and lead time distributions are unknown and must be estimated. In this study, a simple exponential smoothing model is used. to generate the estimates of demand in each period and a discrete distribution of the lead time is developed from historical data, and the optimal service level is used which determined to consider both of a backorder and lost sale.

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An Analysis on the Optimal Level of the Maintenance Float Using Absorbing Markov Chain (흡수 마코프 체인을 활용한 적정 M/F 재고 수준에 관한 연구)

  • Kim, Yong;Yoon, Bong-Kyoo
    • Journal of the military operations research society of Korea
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    • v.34 no.2
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    • pp.163-174
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    • 2008
  • The military is an organization where reliability and availability take much more importance than in any other organization. And, in line with a recent trend of putting emphasis on 'system readiness', not only functions but also availability of a weapon system has become one of achievement targets. In this regard, the military keeps spares for important facility and equipment, which is called as Maintenance Float (M/F), in order to enhance reliability and availability in case of an unforeseen event. The military has calculated yearly M/F requirements based on the number of equipment and utilization rate. However, this method of calculation has failed to meet the intended targets of reliability and availability due to lack of consideration on the characteristics of equipment malfunctions and maintenance unit's capability. In this research, we present an analysis model that can be used to determine an optimal M/F inventory level based on queuing and absorbed Markov chain theories. And, we applied the new analysis model to come out with an optimal volume of K-1 tank M/F for the OO division, which serves as counterattack military unit. In our view, this research is valuable because, while using more tractable methodology compared to previous research, we present a new analysis model that can describe decision making process on M/F level more satisfactorily.